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来自人白血病脾脏的脱氧胞苷激酶:纯酶的制备及特性

Deoxycytidine kinase from human leukemic spleen: preparation and characteristics of homogeneous enzyme.

作者信息

Bohman C, Eriksson S

机构信息

Medical Nobel Institute, Department of Biochemistry I, Karolinska Institute, Stockholm, Sweden.

出版信息

Biochemistry. 1988 Jun 14;27(12):4258-65. doi: 10.1021/bi00412a009.

Abstract

Deoxycytidine kinase from human leukemic spleen has been purified 6000-fold to apparent homogeneity with an overall yield of 10%. The purification was achieved by using DEAE chromatography, hydroxylapatite chromatography, and affinity chromatography on dTTP-Sepharose. Only one form of deoxycytidine kinase activity was found during all the chromatographic procedures. The subunit molecular mass, as judged by sodium dodecyl sulfate--polyacrylamide gel electrophoresis, was 30 kilodaltons. The pure enzyme phosphorylates deoxycytidine, deoxyadenosine, and deoxyguanosine, demonstrating for the first time that the same enzyme molecule has the capacity to use these three nucleosides as substrates. The apparent molecular weight of the active enzyme, determined by gel filtration and glycerol gradient centrifugation, was 60,000. Thus, the active form of human deoxycytidine kinase is a dimer. The kinetic behavior of pure human deoxycytidine kinase was studied in detail with regard to four different phosphate acceptors and two different phosphate donors. The apparent Km values were 1, 20, 150, and 120 microM for deoxycytidine, arabinosylcytosine, deoxyguanosine, and deoxyadenosine, respectively. The Vmax values were 5-fold higher for the purine nucleosides as compared to the pyrimidine substrates. We observe competitive inhibition of the phosphorylation of one substrate by the presence of either of the three other substrates, but the apparent Ki values differed greatly from the corresponding Km values, suggesting the existence of allosteric effects. The double-reciprocal plots for ATP-MgCl2 as phosphate donor were convex, indicating negative cooperative effects. In contrast, plots with varying dTTP-MgCl2 concentration as phosphate donor were linear with an apparent Km of 2 microM. The enzyme activity was strongly inhibited by dCTP, in a noncompetitive way with deoxycytidine and in a competitive way with ATP-MgCl2.

摘要

从人白血病脾脏中提取的脱氧胞苷激酶已被纯化6000倍,达到表观均一性,总产率为10%。通过使用DEAE色谱、羟基磷灰石色谱和dTTP-琼脂糖亲和色谱实现了纯化。在所有色谱过程中仅发现一种形式的脱氧胞苷激酶活性。通过十二烷基硫酸钠-聚丙烯酰胺凝胶电泳判断,亚基分子量为30千道尔顿。纯酶可使脱氧胞苷、脱氧腺苷和脱氧鸟苷磷酸化,首次证明同一酶分子有能力将这三种核苷用作底物。通过凝胶过滤和甘油梯度离心法测定,活性酶的表观分子量为60,000。因此,人脱氧胞苷激酶的活性形式是二聚体。针对四种不同的磷酸受体和两种不同的磷酸供体,详细研究了纯人脱氧胞苷激酶的动力学行为。脱氧胞苷、阿糖胞苷、脱氧鸟苷和脱氧腺苷的表观Km值分别为1、20、150和120微摩尔。与嘧啶底物相比,嘌呤核苷的Vmax值高5倍。我们观察到其他三种底物中的任何一种存在时,会对一种底物的磷酸化产生竞争性抑制,但表观Ki值与相应的Km值差异很大,表明存在变构效应。以ATP-MgCl2作为磷酸供体的双倒数图呈凸形,表明存在负协同效应。相比之下,以不同浓度的dTTP-MgCl2作为磷酸供体的图呈线性,表观Km为2微摩尔。该酶活性受到dCTP的强烈抑制,对脱氧胞苷呈非竞争性抑制,对ATP-MgCl2呈竞争性抑制。

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